CN212582127U - Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment - Google Patents

Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment Download PDF

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Publication number
CN212582127U
CN212582127U CN202021190801.6U CN202021190801U CN212582127U CN 212582127 U CN212582127 U CN 212582127U CN 202021190801 U CN202021190801 U CN 202021190801U CN 212582127 U CN212582127 U CN 212582127U
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CN
China
Prior art keywords
wind channel
wallboards
platform
slip
roller
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Expired - Fee Related
Application number
CN202021190801.6U
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Chinese (zh)
Inventor
汪元兵
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Changzhou Haifeier Machinery Co ltd
Original Assignee
Changzhou Haifeier Machinery Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Changzhou Haifeier Machinery Co ltd filed Critical Changzhou Haifeier Machinery Co ltd
Priority to CN202021190801.6U priority Critical patent/CN212582127U/en
Application granted granted Critical
Publication of CN212582127U publication Critical patent/CN212582127U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to the technical field of web forming equipment, and discloses a non-woven fabric and mask spray-melting cloth web forming equipment, which comprises a track and a platform, wherein the lower end of the platform is provided with a pulley, the pulley is matched with the track, the upper end of the platform is fixedly provided with a lifter, the upper end of the lifter is fixedly connected with a vertical wallboard, the number of wallboards is two, the wallboards are parallel to each other, a horizontal first anti-slip roller is connected between the lower ends of the wallboards, a horizontal second anti-slip roller is connected between the upper ends of the wallboards, a polyester woven mesh belt is connected between the first anti-slip roller and the second anti-slip roller, an edge correcting machine is installed at one side of the wallboards away from each other, an air channel is also connected between the wallboards, the upper end surface of the air channel is contacted with the polyester woven mesh belt, the air channel is provided with a first, the equipment is simple to operate and stable in performance, and can be used for production of non-woven fabrics and mask melt-blown fabrics in the field of medical packaging.

Description

Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment
Technical Field
The utility model relates to a net forming equipment technical field especially relates to a non-woven fabrics and gauze mask spout and melt cloth net forming equipment.
Background
The non-woven fabric netting equipment generally comprises a filament forming device, a conveying device and a compacting device, wherein the filament forming device changes raw materials into spun yarns, the spun yarns are flatly laid on the conveying device, the conveying device conveys the spun yarns to the compacting device, and the compacting device compacts the spun yarns into cloth. The prior non-woven fabric web-forming equipment conveying device is generally of a drum-type structure, and in the operation process, static electricity is easily generated between the non-woven fabric and a drum, so that subsequent production is influenced to a certain extent, and the quality of the non-woven fabric is adversely affected.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing a non-woven fabric and mask spray-melt fabric-forming device.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a non-woven fabric and mask spray-melting cloth-laying device comprises a track and a platform, wherein pulleys are arranged at the lower end of the platform and are matched with the track, a lifter is fixedly arranged at the upper end of the platform, vertical wallboards are fixedly connected at the upper end of the lifter, the number of the wallboards is two, the wallboards are parallel to each other, a horizontal first anti-slip roller is connected between the lower ends of the wallboards, a horizontal second anti-slip roller is connected between the upper ends of the wallboards, a polyester woven mesh belt is connected between the first anti-slip roller and the second anti-slip roller, an edge correction machine is installed at one side, away from each other, of the wallboards, an air channel is also connected between the wallboards, the upper end surface of the air channel is contacted with the polyester woven mesh belt, a first air channel, a second air channel, a third air channel and a fourth air channel are arranged on the air channel, and inlet ends of the first air channel, the second air, the outlet ends of the first air duct, the second air duct, the third air duct and the fourth air duct are sequentially arranged on the side face of the air duct, and the outlet ends of the first air duct, the second air duct, the third air duct and the fourth air duct are connected with the inlet end of the induced draft fan.
Preferably, a horizontal through groove is further formed in the wallboard, a tension roller is mounted on the wallboard, and a rotating shaft of the tension roller is matched with the inner wall of the through groove.
Preferably, the upper end of the air duct is provided with a movable screen.
Preferably, the lower end of the platform is provided with a turbine motor, and an output shaft of the turbine motor is connected with the pulley.
Preferably, the elevator is a one-to-four elevator.
Preferably, the side of the wallboard far away from the tension roller is provided with a guide roller through a bracket.
Preferably, the first anti-slip roller and the second anti-slip roller are both knurled anti-slip rollers.
The utility model has the advantages that:
1. weaving the guipure through polyester in this device and replaced traditional drum-type conveyer, the guipure and first anti-skidding roller are woven to polyester, the anti-skidding roller of second cooperatees, can transport the thermal current raw materials that the mould blowout comes, form the negative pressure in the top in the wind channel through the draught fan, make the thermal current raw materials adsorb and stereotype at polyester woven mesh belt surface cooling, whole convenient operation is simple, the thermal current raw materials is difficult for the friction between the conveyer to produce static, the quality of product can not receive bad influence.
2. The equipment is simple to operate and stable in performance, and can be used for production of non-woven fabrics and mask melt-blown fabrics in the field of medical packaging.
Drawings
FIG. 1 is a schematic view of a non-woven fabric and mask melt-blown web forming device according to the present invention;
FIG. 2 is a schematic diagram of a side view of an air duct of a non-woven fabric and mask melt-blown web forming device according to the present invention;
fig. 3 is a schematic view of a overlooking structure of a non-woven fabric and mask melt-blown fabric netting device provided by the present invention.
In the figure: the device comprises a track 1, a turbine motor 2, a platform 3, a lifter 4, a wallboard 5, a first anti-slip roller 6, a tension roller 7, an edge correction machine 8, an air duct 9, a second anti-slip roller 10, a first air duct 91, a second air duct 92, a third air duct 93 and a fourth air duct 94.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, a non-woven fabric and mask spraying and melting cloth netting device comprises a track 1 and a platform 3, pulleys are arranged at the lower end of the platform 3 and are matched with the track 1, a lifter 4 is fixedly arranged at the upper end of the platform 3, vertical wallboards 5 are fixedly connected at the upper end of the lifter 4, the number of the wallboards 5 is two, the wallboards 5 are parallel to each other, a horizontal first anti-slip roller 6 is connected between the lower ends of the wallboards 5, a horizontal second anti-slip roller 10 is connected between the upper ends of the wallboards 5, a polyester woven mesh belt is connected between the first anti-slip roller 6 and the second anti-slip roller 10, an edge correcting machine 8 is arranged at one side of the wallboards 5, the edge correcting machine 8 is matched with an ultrasonic sensor and can correct edges of the polyester woven mesh belt, the running of the polyester woven mesh belt is ensured not to be deviated, and an air channel 9 is further connected between the wall, the upper end face of wind channel 9 contacts with the polyester woven mesh belt, be provided with first wind channel 91, second wind channel 92, third wind channel 93 and fourth wind channel 94 on the wind channel 9, the entrance point of first wind channel 91, second wind channel 92, third wind channel 93 and fourth wind channel 94 sets gradually in the upper end of wind channel 9, the exit end of first wind channel 91, second wind channel 92, third wind channel 93 and fourth wind channel 94 sets gradually in the side of wind channel 9, the exit end of first wind channel 91, second wind channel 92, third wind channel 93 and fourth wind channel 94 is connected with the entrance point of draught fan.
Furthermore, a horizontal through groove is further formed in the wall plate 5, a tension roller 7 is mounted on the wall plate 5, and a rotating shaft of the tension roller 7 is matched with the inner wall of the through groove.
Furthermore, a movable screen is arranged at the upper end of the air duct 9.
Further, turbine motor 2 is installed to the lower extreme of platform 3, turbine motor 2's output shaft is connected with the pulley, can drive the pulley through turbine motor 2 and rotate, and then makes the device move on track 1.
Furthermore, the lifter 4 is a one-to-four lifter, the lifter 4 is combined by a coupler and a steering gear, and the vertical distance between the polyester woven mesh belt and the die can be freely adjusted according to the production process requirement.
Further, a guide roller is arranged on one side of the wall plate 5 far away from the tension roller 7 through a bracket.
Further, the first anti-slip roller 6 and the second anti-slip roller 10 are both knurled anti-slip rollers.
In the embodiment, the traditional drum-type conveying device is replaced by the polyester woven mesh belt in the device, the polyester woven mesh belt is matched with the first anti-slip roller 6 and the second anti-slip roller 10, the lifting machine 4 is arranged on the platform 3, the lifting machine 4 is a four-in-one lifting machine and is combined by a coupler and a steering gear, the vertical distance between the polyester woven mesh belt and a mold can be freely adjusted according to the production process requirement, the polyester woven mesh belt can transport heat flow raw materials sprayed out from the mold, negative pressure is formed above the air duct 9 through an induced draft fan, the air duct 9 is of a 4-layer independent structure, the pressure and flow stability of the induced draft fan are ensured, the heat flow raw materials are adsorbed on the surface of the polyester woven mesh belt for cooling and shaping, a movable mesh plate is arranged above the air duct 9, impurities can be conveniently removed, the whole operation is convenient and simple, and the heat flow raw, the quality of the product is not adversely affected.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (7)

1. The non-woven fabric and mask spraying and melting cloth web forming equipment comprises a rail (1) and a platform (3) and is characterized in that pulleys are arranged at the lower end of the platform (3), the pulleys are matched with the rail (1), an elevator (4) is fixedly arranged at the upper end of the platform (3), a vertical wallboard (5) is fixedly connected at the upper end of the elevator (4), the quantity of the wallboards (5) is two, the wallboards (5) are parallel to each other, a horizontal first anti-slip roller (6) is connected between the lower ends of the wallboards (5), a horizontal second anti-slip roller (10) is connected between the upper ends of the wallboards (5), a polyester woven mesh belt is connected between the first anti-slip roller (6) and the second anti-slip roller (10), an edge correcting machine (8) is installed at one side, away from each other, and an air duct (9) is connected between the wallboards (5), the up end of wind channel (9) contacts with the polyester woven mesh belt, the entrance point that is provided with first wind channel (91), second wind channel (92), third wind channel (93) and fourth wind channel (94) on wind channel (9) sets gradually in the upper end of wind channel (9), the exit end of first wind channel (91), second wind channel (92), third wind channel (93) and fourth wind channel (94) sets gradually in the side of wind channel (9), the exit end of first wind channel (91), second wind channel (92), third wind channel (93) and fourth wind channel (94) is connected with the entrance point of draught fan.
2. The non-woven fabric and mask spray-melting cloth-netting device according to claim 1, wherein a horizontal through groove is further formed in the wall plate (5), a tension roller (7) is mounted on the wall plate (5), and a rotating shaft of the tension roller (7) is matched with the inner wall of the through groove.
3. A non-woven fabric and mask melt-blown web forming apparatus according to claim 2, wherein a movable mesh plate is mounted on the upper end of the air duct (9).
4. The non-woven fabric and mask melt-blown web forming device according to claim 3, wherein a turbine motor (2) is mounted at the lower end of the platform (3), and an output shaft of the turbine motor (2) is connected with a pulley.
5. A device for melt-blown web formation of non-woven fabrics and masks according to claim 4, characterized in that said lifter (4) is a four-by-one lifter.
6. A non-woven fabric and mask melt-blown web forming apparatus according to claim 5, wherein the side of the wall panel (5) remote from the tension roller (7) is provided with guide rollers by brackets.
7. A device for the spunlace of non-woven fabrics and masks according to claim 1 or 6, characterized in that said first non-slip roll (6) and said second non-slip roll (10) are knurled non-slip rolls.
CN202021190801.6U 2020-06-23 2020-06-23 Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment Expired - Fee Related CN212582127U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021190801.6U CN212582127U (en) 2020-06-23 2020-06-23 Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021190801.6U CN212582127U (en) 2020-06-23 2020-06-23 Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment

Publications (1)

Publication Number Publication Date
CN212582127U true CN212582127U (en) 2021-02-23

Family

ID=74650425

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021190801.6U Expired - Fee Related CN212582127U (en) 2020-06-23 2020-06-23 Non-woven fabrics and gauze mask spout and melt cloth net-forming equipment

Country Status (1)

Country Link
CN (1) CN212582127U (en)

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Granted publication date: 20210223